763
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Management options for the unfavorable nutrient balance of recreational fishing in Lake Balaton (Hungary)

ORCID Icon, ORCID Icon &
Article: 2095928 | Received 23 Mar 2022, Accepted 24 Jun 2022, Published online: 03 Jul 2022

References

  • Amaral, S. D., D. Brito, M. T. Ferreira, R. Neves, and A. Franco. 2013. “Modeling Water Quality in Reservoirs Used for Angling Competition: Can Groundbait Contribute to Eutrophication?” Lake and Reservoir Management 29: 257–15. doi:10.1080/10402381.2013.845804.
  • Arlinghaus, R., S. J. Cooke, J. Lyman, D. Policansky, A. Schwab, C. Suski, S. G. Sutton, and E. B. Thorstad. 2007. “Understanding the Complexity of catch-and-release in Recreational Fishing: An Integrative Synthesis of Global Knowledge from Historical, Ethical, Social, and Biological Perspectives.” Reviews in Fisheries Science 15: 75–167. doi:10.1080/10641260601149432.
  • Arlinghaus, R., and T. Mehner. 2003. “Socio-economic Characterisation of Specialised Common Carp (Cyprinus Carpio L.) Anglers in Germany, and Implications for Inland Fisheries Management and Eutrophication Control.” Fisheries Research 61: 19–33. doi:10.1016/S0165-7836(02)00243-6.
  • Arlinghaus, R., and M. Niesar. 2005. “Nutrient Digestibility of Angling Baits for Carp, Cyprinus Carpio, with Implications for Groundbait Formulation and Eutrophication Control.” Fisheries Management and Ecology 12: 91–97. doi:10.1111/j.1365-2400.2004.00425.x.
  • Arlinghaus, R., R. Tiller, and M. Bork. 2015. “Expanding Participation Rates in Recreational Fishing across Industrialized Countries.” Fisheries Management and Ecology 22: 45–55. doi:10.1111/fme.12075.
  • Bernát, G., N. Boross, B. Somogyi, L. Vörös, L. G.-Tóth, and G. Boros. 2020. “Oligotrophication of Lake Balaton over a 20-year Period and Its Implications for the Relationship between Phytoplankton and Zooplankton Biomass.” Hydrobiologia 847: 3999–4013. doi:10.1007/s10750-020-04384-x.
  • Bíró, P. 1997. “Temporal Variation in Lake Balaton and Its Fish Populations.” Ecology of Freshwater Fish 6: 196–216. doi:10.1111/j.1600-0633.1997.tb00163.x.
  • Boros, G. 2022. “Nitrogen and Phosphorus Removal by Fishing in a Large Freshwater Lake (Lake Balaton, Hungary).” Inland Waters (Early View) 12: 277–282. doi:10.1080/20442041.2021.1991754.
  • Boros, G., and A. Mozsár. 2015. “Comparison of Different Methods Used for Phosphorus Determination in Aquatic Organisms.” Hydrobiologia 758: 235–242. doi:10.1007/s10750-015-2293-2.
  • Boström, B., J. M. Andersen, S. Fleischer, and M. Jansson. 1988. “Exchange of Phosphorus across the sediment-water Interface.” Hydrobiologia 170: 229–244. doi:10.1007/BF00024907.
  • Camarero, L., and J. Catalan. 2012. “Atmospheric Phosphorus Deposition May Cause Lakes to Revert from Phosphorus Limitation Back to Nitrogen Limitation.” Nature Communications 3: 1118. doi:10.1038/ncomms2125.
  • Carpenter, S. R., N. F. Caraco, D. L. Correll, R. W. Howarth, A. N. Sharpley, and V. H. Smith. 1998. “Nonpoint Pollution of Surface Waters with Phosphorus and Nitrogen.” Ecological Applications 8: 559–568. doi:10.1890/1051-0761(1998)008[0559:NPOSWW]2.0.CO;2.
  • Carpenter, S. R., and R. C. Lathrop. 2008. “Probabilistic Estimate of a Threshold for Eutrophication.” Ecosystems 11: 601–613. doi:10.1007/s10021-008-9145-0.
  • Cryer, M., and R. W. Edwards. 1987. “The Impact of Angler Groundbait on Benthic Invertebrates and Sediment Respiration in a Shallow Eutrophic Reservoir.” Environmental Pollution 46: 137–150. doi:10.1016/0269-7491(87)90199-0.
  • Czerniejewski, P., and A. Brysiewicz. 2018. “Fish Management and Biogenic Levels Entered in Lakes in Groundbait on the Example of the Myśla Upper Basin.” Water-Environment-Rural Areas 18: 23–35. (in Polish with English summary).
  • Edwards, R. W., and V. A. Fouracre. 1983. “Is the Banning of ground-baiting in Reservoirs Justified?” Proceedings of the Third British Freshwater Conference, 89–94. Liverpool: University of Liverpool.
  • FAO. 2010. “FAO Technical Guidelines for Responsible Fisheries No. 13.” In Recreational Fisheries, 176. Rome: FAO.
  • Grochowska, J., R. Tandyrak, R. Augustyniak, M. Łopata, and K. Parszuto. 2020. “Nutrient Balance of North-Eastern Poland Lakes.” In The Handbook of Environmental Chemistry, edited by E. Korzeniewska and M. Harnisz, 261–276. Vol. 86. Berlin/Heidelberg, Germany: Polish river basins and lakes - Part I, Springer.
  • Gulati, R. D., E. H. R. R. Lammens, M.-L. Meijer, and E. van Donk. 1990. Biomanipulation-Tool for Water Management. The Netherlands: Kluwer Academic Publishers.
  • Hendrixson, H. A., R. W. Sterner, and A. D. Kay. 2007. “Elemental Stoichiometry of Freshwater Fishes in Relation to Phylogeny, Allometry and Ecology.” Journal of Fish Biology 70: 121–140. doi:10.1111/j.1095-8649.2006.01280.x.
  • Hlaváč, D., Z. Adámek, P. Hartman, and J. Másílko. 2014. “Effects of Supplementary Feeding in Carp Ponds on Discharge Water Quality: A Review.” Aquaculture International 22: 299–320. doi:10.1007/s10499-013-9718-6.
  • Hlaváč, D., M. Anton-Pardo, J. Masílko, P. Hartman, J. Regenda, P. Vejsada, M. Baxa, et al. 2016. “Supplementary Feeding with Thermally Treated Cereals in Common Carp (Cyprinus Carpio L.) Pond Farming and Its Effects on Water Quality, Nutrient Budget and Zooplankton and Zoobenthos Assemblages.” Aquaculture International 24: 1681–1697. doi:10.1007/s10499-016-0059-0.
  • Huang, Y., P. Ciais, D. S. Goll, J. Sardans, J. Peñuelas, F. Cresto-Aleina, and H. Zhang. 2020. “The Shift of Phosphorus Transfers in Global Fisheries and Aquaculture.” Nature Communications 11: 355. doi:10.1038/s41467-019-14242-7.
  • Imbert, A., J. Cucherousset, N. Parthuisot, and S. Boulêtreau. 2022. “Elemental Composition and Microbial Decomposition of Different Angling Baits.” Fisheries Management and Ecology (Early View). doi:10.1111/fme.12537.
  • Istvánovics, V., A. Clement, L. Somlyódy, A. Specziár, L. G.-Tóth, and J. Padisák. 2007. “Updating Water Quality Targets for Shallow Lake Balaton (Hungary), Recovering from Eutrophication.” Hydrobiologia 581: 305–318. doi:10.1007/s10750-006-0509-1.
  • Istvánovics, V., M. Honti, P. Torma, and J. Kousal. 2022. “Record-setting Algal Bloom in Polymictic Lake Balaton (Hungary): A Synergistic Impact of Climate Change and (Mis)management.” Freshwater Biology 67: 1091–1106. doi:10.1111/fwb.13903.
  • Istvánovics, V., A. Osztoics, and M. Honti. 2004. “Dynamics and Ecological Significance of Daily Internal Load of Phosphorus in Shallow Lake Balaton, Hungary.” Freshwater Biology 49: 232–252. doi:10.1111/j.1365-2427.2004.01180.x.
  • Jeppesen, E., J. P. Jensen, M. Søndergaard, K. S. Hansen, P. H. Møller, H. U. Rasmussen, V. Norby, and S. E. Larsen. 2003. “Does Resuspension Prevent a Shift to a Clear State in Shallow Lakes during Reoligotrophication?” Limnology and Oceanography 48: 1913–1919. doi:10.4319/lo.2003.48.5.1913.
  • Kasprzak, P., R. Koschel, L. Krienitz, T. Gonsiorczky, K. Anwand, U. Laude, K. Wysujack, H. Brach, and T. Mehner. 2003. “Reduction of Nutrient Loading, Planktivore Removal and Piscivore Stocking as Tools in Water Quality Management: The Feldberger Haussee Biomanipulation Project.” Limnologica 33: 190–204. doi:10.1016/S0075-9511(03)80013-0.
  • Lewin, W. C., R. Arlinghaus, and T. Mehner. 2006. “Documented and Potential Biological Impacts of Recreational Fishing: Insights for Management and Conservation.” Reviews in Fisheries Science 14: 305–367. doi:10.1080/10641260600886455.
  • Mehner, T., T. Rapp, C. T. Monk, M. E. Beck, A. Trudeau, M. Kiljunen, S. Hilt, and R. Arlinghaus. 2019. “Feeding Aquatic Ecosystems: Whole-lake Experimental Addition of Angler’s Ground Bait Strongly Affects Omnivorous Fish despite Low Contribution to Lake Carbon Budget.” Ecosystems 22: 346–362. doi:10.1007/s10021-018-0273-x.
  • Moss, B., J. Madgwick, and G. Phillips, eds. 1996. A Guide to the Restoration of nutrient-enriched Shallow Lakes, 180. UK: W W Hawes.
  • Niesar, M., R. Arlinghaus, B. Rennert, and T. Mehner. 2004. “Coupling Insights from a Carp, Cyprinus Carpio, Angler Survey with Feeding Experiments to Evaluate Composition, Quality and Phosphorus Input of Groundbait in Coarse Fishing.” Fisheries Management and Ecology 11: 225–235. doi:10.1111/j.1365-2400.2004.00400.x.
  • Schindler, D. 2012. “The Dilemma of Controlling Cultural Eutrophication of Lakes.” Proceedings of the Royal Society B 279: 4322–4333. doi:10.1098/rspb.2012.1032.
  • Smith, V. H., and D. W. Schindler. 2009. “Eutrophication Science: Where Do We Go from Here?” Trends in Ecology & Evolution 24: 201–207. doi:10.1016/j.tree.2008.11.009.
  • Søndergaard, M., L. S. Johansson, T. L. Lauridsen, T. B. Jørgensen, L. Liboriussen, and E. Jeppesen. 2010. “Submerged Macrophytes as Indicators of the Ecological Quality of Lakes.” Freshwater Biology 55: 893–908. doi:10.1111/j.1365-2427.2009.02331.x.
  • Søndergaard, M., L. Liboriussen, A. R. Pedersen, and E. Jeppesen. 2008. “Lake Restoration by Fish Removal: Short-and long-term Effects in 36 Danish Lakes.” Ecosystems 11: 1291–1305. doi:10.1007/s10021-008-9193-5.
  • Specziár, A. 2010. “Fish Fauna of Lake Balaton: Stock Composition, Living Conditions of Fish and Directives of the Modern Utilization of the Fish Stock.” Acta Biologica Debrecenia Supplementum Oecologica Hungarica 23: 7–185. (Hydrobiology Monographs vol. 2). (in Hungarian with English summary).
  • Specziár, A. 2011. “Size-dependent Prey Selection in Piscivorous Pikeperch Sander Lucioperca and Volga Pikeperch S. Volgensis Shaped by Bimodal Prey Size Distribution.” Journal of Fish Biology 79: 1895–1917. doi:10.1111/j.1095-8649.2011.03127.x.
  • Specziár, A., and T. Erős. 2020. “Development of a fish-based Index for the Assessment of the Ecological Status of Lake Balaton in the Absence of Present Day Reference Condition.” Knowledge and Management of Aquatic Ecosystems 421: 11. doi:10.1051/kmae/2020002.
  • Specziár, A., and E. Rezsu. 2009. “Feeding Guilds and Food Resource Partitioning in a Lake Fish Assemblage: An Ontogenetic Approach.” Journal of Fish Biology 75: 247–267. doi:10.1111/j.1095-8649.2009.02283.x.
  • Specziár, A., L. Tölg, and P. Bíró. 1997. “Feeding Strategy and Growth of Cyprinids in the Littoral Zone of Lake Balaton.” Journal of Fish Biology 51: 1109–1124. doi:10.1111/j.1095-8649.1997.tb01130.x.
  • Specziár, A., and B. Turcsányi. 2014. “Effect of Stocking Strategy on Distribution and Recapture Rate of Common Carp Cyprinus Carpio L., in a Large and Shallow Temperate Lake: Implications for Recreational put-and-take Fisheries Management.” Journal of Applied Ichthyology 30: 887–894. doi:10.1111/jai.12488.
  • Specziár, A., and B. Turcsányi. 2017. “Management of Pikeperch Stocking in Lake Balaton: Effect of Season, Area, Fish Size and Method of Release on the Rate and Distribution of Recaptures.” Knowledge and Management of Aquatic Ecosystems 418: 52. doi:10.1051/kmae/2017047.
  • Specziár, A., and L. Vörös. 2001. “Long Term Dynamics of Lake Balaton’s Chironomid Fauna and Its Dependence on the Phytoplankton Production.” Archiv für Hydrobiologie 152: 119–142. doi:10.1127/archiv-hydrobiol/152/2001/119.
  • Tacon, A. G. J., M. Metian, and M. R. Hassan. 2009. “Feed Ingredients and Fertilizers for Farmed Aquatic Animals: Sources and Composition.” FAO Fisheries and Aquaculture Technical Paper 540: 209.
  • Tang, H., and P. Xie. 2000. “Budgets and Dynamics of Nitrogen and Phosphorus in a Shallow, Hypereutrophic Lake in China.” Journal of Freshwater Ecology 15: 505–514. doi:10.1080/02705060.2000.9663773.
  • Turner, A. M., and N. Ruhl. 2007. “Phosphorus Loadings Associated with a Park Tourist Attraction: Limnological Consequences of Feeding the Fish.” Environmental Management 39: 526–533. doi:10.1007/s00267-005-0155-9.
  • Vollenweider, R. A., and J. Kerekes. 1982. Eutrophication of Waters. Monitoring, Assessment and Control. Paris (France): Organization for Economic Co-Operation and Development (OECD).
  • Wolos, A., M. Teodorowicz, and K. Grabowska. 1992. “Effect of ground-baiting on Anglers’ Catches and Nutrient Budget of Water Bodies as Exemplified by Polish Lakes.” Aquaculture and Fisheries Management 23: 499–509.